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1. Neuronal ageing is promoted by the decay of the microtubule cytoskeleton.

2. Tau, XMAP215/Msps and Eb1 co-operate interdependently to regulate microtubule polymerisation and bundle formation in axons.

3. Efa6 protects axons and regulates their growth and branching by inhibiting microtubule polymerisation at the cortex

4. Tau and spectraplakins promote synapse formation and maintenance through Jun kinase and neuronal trafficking

5. Regulation of branching dynamics by axon-intrinsic asymmetries in Tyrosine Kinase Receptor signaling

6. Microtubule decay is a driver of neuronal ageing and a promising target for intervention

7. Re‐evaluating the actin‐dependence of spectraplakin functions during axon growth and maintenance

8. Drosophila Primary Neuronal Cultures as a Useful Cellular Model to Study and Image Axonal Transport

9. Tau, XMAP215/Msps and Eb1 co-operate interdependently to regulate microtubule polymerisation and bundle formation in axons

10. Efa6 protects axons and regulates their growth and branching by inhibiting microtubule polymerisation at the cortex

12. The formin DAAM is required for coordination of the actin and microtubule cytoskeleton in axonal growth cones

13. DrosophilaShort stop as a paradigm for the role and regulation of spectraplakins

14. Tau and spectraplakins promote synapse formation and maintenance through Jun kinase and neuronal trafficking

16. Functional and Genetic Analysis of Spectraplakins in Drosophila

17. Regulation of Drosophila Brain Wiring by Neuropil Interactions via a Slit-Robo-RPTP Signaling Complex

18. The Influence of Pioneer Neurons on a Growing Motor Nerve inDrosophilaRequires the Neural Cell Adhesion Molecule Homolog FasciclinII

19. Charting the Drosophila neuropile: a strategy for the standardised characterisation of genetically amenable neurites

20. In developing Drosophila neurones the production of γ-amino butyric acid is tightly regulated downstream of glutamate decarboxylase translation and can be influenced by calcium

21. Regulation of branching dynamics by axon-intrinsic asymmetries in Tyrosine Kinase Receptor signaling

22. Author response: Regulation of branching dynamics by axon-intrinsic asymmetries in Tyrosine Kinase Receptor signaling

23. Regulatory Mutations of the Drosophila Sox Gene Dichaete Reveal New Functions in Embryonic Brain and Hindgut Development

24. Using fly genetics to dissect the cytoskeletal machinery of neurons during axonal growth and maintenance

25. Drosophila Psidin regulates olfactory neuron number and axon targeting through two distinct molecular mechanisms

26. Spectraplakins promote microtubule-mediated axonal growth by functioning as structural microtubule-associated proteins and EB1-dependent + TIPs (tip interacting proteins)

27. The actin-binding protein Canoe/AF-6 forms a complex with Robo and is required for Slit-Robo signaling during axon pathfinding at the CNS midline

28. Using Primary Neuron Cultures of Drosophila to Analyze Neuronal Circuit Formation and Function

29. Drosophila growth cones: a genetically tractable platform for the analysis of axonal growth dynamics

30. Mouse ACF7 and Drosophila Short stop modulate filopodia formation and microtubule organisation during neuronal growth

31. Formin proteins of the DAAM subfamily play a role during axon growth

32. Are dendrites in Drosophila homologous to vertebrate dendrites?

34. The Dichaete gene of Drosophila melanogaster encodes a SOX-domain protein required for embryonic segmentation

35. Dissecting Regulatory Networks of Filopodia Formation in a Drosophila Growth Cone Model

36. Drosophila as a genetic and cellular model for studies on axonal growth

37. A conceptual view at microtubule plus end dynamics in neuronal axons

38. Dissecting regulatory networks of filopodia formation in a Drosophila growth cone model.

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